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From version < 87.1 >
edited by Alexander Schulz-Rosengarten
on 2017/02/03 10:44
To version < 85.1 >
edited by ssm
on 2016/12/21 14:24
>
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73 73  
74 74  = Semantics, Synchronous Languages and Model-based Design =
75 75  
76 -**Advisors:** Steven Smyth, Alexander Schulz-Rosengarten, Reinhard v. Hanxleden
76 +**Advisors:** Christian Motika, Steven Smyth, Reinhard v. Hanxleden
77 77  
78 78  Heute haben sich eine ganze Reihe von Modellierungssprachen durchgesetzt, die grafische Modelle verwenden. Dazu zählen beispielsweise die [[Unified Modeling Language (UML) >>url:http://de.wikipedia.org/wiki/UML||shape="rect" class="external-link"]]oder die Werkzeugketten [[Simulink/Stateflow von Mathworks >>url:http://de.wikipedia.org/wiki/Simulink||shape="rect" class="external-link"]]und [[SCADE von Esterel-Technologies>>url:http://en.wikipedia.org/wiki/SCADE||shape="rect" class="external-link"]]. Letztere werden insbesondere auch im Entwurf eingebetteter und sicherheitskritischer Systeme (z.B. in Fahr- und Flugzeugen) eingesetzt.
79 79  
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93 93  * (% style="line-height: 1.4285715;" %)**On the pragmatics of modeling large models in SCCharts**(%%) (Bachelor/Master)
94 94  Evaluate the possibilities to create and maintain large models in model-based languages (i.e. SCCharts) and provide suggestions for improvements
95 95  * **Transformation of Circuits to SCCharts** (Bachelor/Master)
96 -Implement a transformation that translates circuits to (dataflow) SCCharts.
96 +* Implement a transformation that translates circuits to (dataflow) SCCharts.
97 97  * **SCCharts Verification** (Master/Bachelor)
98 98  Add the possibility to perfom model checking on SCCharts
99 -* **Transformation Verification** (Master/Bachelor)
100 -Develop a method for SCCharts to check transformations for semantic equivalence.
101 101  * **Derive M2M Transformations from Pseudocode** (Master/Bachelor)
102 102  Create a Pseudocode DSL (and generator) to automatically derive M2M transformations.
103 103  * **Raceyard evaluation** (Master)
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106 106  //SCCharts Code Generation & Optimizations//
107 107  
108 108  * **Optimization of the SCCharts compiler/transformations **(Bachelor/Master)
109 -Profile the actual SCCharts compiler/transformations and apply optimizations; also evaluate the possibility to use multiple cores for compilation.
110 -* **SCG Optimization based on SSA **(Bachelor/Master)
111 -The Static Single Assignment form enables powerful optimizations such as [[sparse conditional constant propagation>>url:http://dl.acm.org/citation.cfm?id=103136||shape="rect"]]. Adjust and implement this algorithm in the context of SCGs and evaluate the result.
107 +Profile the actual SCCharts compiler/transformations and apply optimizations; also evaluate the possibility to use multiple cores for compilation
112 112  * **Extend the SC MoC to handle priority-based variable accesses** (Bachelor/Master)
113 113  Add priorities to variable accesses to extend the SC MoC and therefore the number of valid sequentially constructive synchronous programs.
114 114  * **Efficient data dependency & scheduling analyses in SCCharts** (Master/Bachelor)
115 -Implement analyses for data dependency, scheduling (e.g. tick boundaries) for SCCharts to improve static scheduling of the compiler.
111 +Implement analyses for data dependency, scheduling (e.g. tick boundaries) for SCCharts to improve static scheduling of the compiler
116 116  * **Curing Schizophrenia in SCCharts **(Master/Bachelor)
117 117  Develop new synchronizer to handle schizophrenia properly (e.g. depth join).
118 118  
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1 -23068931
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1 -https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTSYS/pages/23068931/Topics for Student Theses
1 +https://rtsys.informatik.uni-kiel.de/confluence//wiki/spaces/RTSYS/pages/23068684/Topics for Student Theses